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Interest of ICG blood clearance monitoring for reproducible 810-nm diode laser coagulation of blood vessels

机译:ICG血液清除监测的兴趣对血管可重复的810nm二极管激光凝固

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Purpose: To evaluate a method of control of diode laser fluence leading to a reproducible ICG-enhanced selective photocoagulation of blood vessels. This method would use the chromophore clearance, i.e. ICG blood concentration decay to adapt the laser fluence. Materials and Methods: A skin flap window was used on hamsters. After a 15 mg/kg ICG solution injection, photocoagulation of vessels were performed. Results: Selective photocoagulation of blood vessels was obtained only during the first 10 minutes. The fluence required to obtain a selective photocoagulation of vessels (F) was modelized using a one compartment phamacokinetic equation: F equals Of(1-e$+$MIN@t/$tau$/). The best fit was obtained for a time constant $tau equals 4.8 min and Of equals 300 J/cm$+2$/ (correlation coefficient r$+2$/ equals 0.996). During the first 10 minutes, the fluence required for selective photocoagulation of vessels was increased by a factor 4.5. Conclusion: Fluence required for a selective photocoagulation of vessels was correlated to ICG blood concentration decay. The time constant was equivalent to ICG half-life time in human blood. These results demonstrate that diode laser ICG-enhanced photocoagulation can be controlled by monitoring the ICG blood clearance.
机译:目的:评估二极管激光器的控制方法,导致可再现的ICG增强的血管选择性光凝。该方法将使用发色团清除,即ICG血液浓度衰减以适应激光物流量。材料和方法:在仓鼠上使用皮瓣窗。在15mg / kg ICG溶液注射后,进行血管的光凝。结果:在前10分钟内仅获得血管的选择性光凝。获得血管(F)的选择性光凝剂所需的注量是使用一个隔室的疾病公式建模的:F等于(1-E $ + $ MIN @ T / $ TAU $ /)。获得最佳拟合时间常数$ tau等于4.8分钟,等于300 j / cm $ + 2 $ /(相关系数r $ + 2 $ /等于0.996)。在前10分钟期间,选择性光凝血管所需的注量增加了0.5倍。结论:对血管选择性光凝所需的注量与ICG血液浓度衰减相关。时间常数相当于人类血液中的ICG半衰期。这些结果表明,可以通过监测ICG血液清除来控制二​​极管激光ICG增强的光凝。

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